A new artificial intelligence model developed by USC researchers and published in Nature Methods can predict how different proteins may bind to DNA with accuracy across different types of protein, a ...
Researchers have built a platform that programs short DNA fragments inside living cells to control protein activity, all ...
Every time a cell divides, it must copy its entire genome so that each daughter cell inherits a complete set of DNA. During that process, enzymes known as polymerases race along the DNA to copy its ...
Thanks to a serendipitous discovery and a lot of painstaking work, scientists can now build biohybrid molecules that combine the homing powers of DNA with the broad functional repertoire of proteins - ...
This Clinical Chemistry and Laboratory Medicine review examines a central challenge in precision medicine: whether medical ...
Every cell in your body faces the same engineering puzzle: how to cram roughly two meters of DNA into a nucleus just a few ...
DNA-nanoparticle motors are exactly as they sound: tiny artificial motors that use the structures of DNA and RNA to propel motion by enzymatic RNA degradation. Essentially, chemical energy is ...